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PMID: 19765620 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Improved gene disruption method and Cre-loxP mutant system for multiple gene disruptions in Hansenula polymorpha.

Journal of microbiological methods ·Vol. 79 ·No. 3 ·2009-12-00 ·Pages 253-9

Qian W, Song H, Liu Y, Zhang C, Niu Z, Wang H, Qiu B

Abstract

In H. polymorpha, there is still a lack of a highly efficient gene disruption method. To help address this issue, we presented a simple and efficient method for both single and multiple gene disruptions in H. polymorpha. The knockout system combined a variation of sticky-end polymerase chain reaction method (SEP), split marker deletion method, co-transformation of single-stranded DNA and mutant Cre-loxP system. Using a slightly modified LiAc/SS-DNA/PEG procedure, the co-transformation double-stranded split marker constructs together with single-stranded split marker constructs resulted in at least 70% homologous recombination events when the homologous genomic DNA fragment had a size of approximately 500bp. Our evidence suggested that single-stranded DNA may be responsible for the increased gene disruption efficiency. We demonstrated the effectiveness of the method for gene disruption by constructing both single and double gene disruptions at the ALG3 and URA5 loci in the same genetic background. The method described here presents an improved strategy for gene disruption and a potential application for investigation of biological processes in other yeast strains.

MeSH Terms
Base Sequence Cloning, Molecular/methods DNA, Single-Stranded Gene Knockout Techniques/methods Genes, Fungal Genetic Markers Integrases/genetics Molecular Sequence Data Mutagenesis Pichia/genetics Recombination, Genetic Transformation, Genetic
Chemicals
DNA, Single-Stranded Genetic Markers Cre recombinase Integrases
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Qian Weidong
Center for Agricultural Biotechnology, Institute of Microbiology, Chinese Academy of Sciences, No. 1 West Beichen Road, Beijing 100101, People's Republic of China.
Song Haolei
Liu Yueyong
Zhang Chaozheng
Niu Zhendong
Wang Hui
Qiu Bingsheng
Article Info
Journal
Journal of microbiological methods
Abbr.
J Microbiol Methods
ISSN
1872-8359
Published
2009-12-00
Epub
2009-00-16
Pages
253-9
Language
English
Region
Netherlands
NLM ID
8306883
Subset
IM
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